Method for rapidly measuring content of trace methylbenzene in benzene based on Raman spectrum
A Raman spectroscopy and rapid determination technology, applied in the field of chemometrics, can solve the problems of complex equipment maintenance, complex operation, slow detection speed, etc., and achieve the effect of no loss of samples, simple operation and fast detection speed
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[0023] The Raman spectroscopy measurement platform used in this example is as follows: figure 1 As shown, the test conditions are: the laser is a Mars laser, the center wavelength is 785nm, and the spectrometer is a QceanOpticsQE650Pro spectrometer. The inventive method specifically comprises the following steps:
[0024] (1) Using pure benzene and toluene, prepare training samples and test samples containing different toluene mass fractions in benzene. The content of toluene in the training samples were 1000ppm, 800ppm, 400ppm, 200ppm, 100ppm and pure benzene, a total of 6 samples. The content of toluene in the test samples were 900ppm, 600ppm, 300ppm, 150ppm, a total of 4 samples.
[0025] (2) Use the Raman spectrum measurement platform to obtain the Raman spectrum of the training sample, and the Raman spectrum with an integration time of 2s is as follows: figure 2 shown, from figure 2 The Raman characteristic peak of benzene in the sample can be clearly seen in the sa...
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